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Sliding mode regulator for maximum power tracking and copper loss minimisation of a doubly fed induction generator

机译:滑模调节器,用于最大功率跟踪和双馈感应发电机的铜损最小化

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摘要

Maximum power tracking and copper loss minimisation of a doubly fed induction generator (DFIG) can be achieved through the control of rotor currents. In this study, a sliding mode regulator (SMR) is presented to regulate the rotor current of a DFIG. The purpose of the SMR is to regulate the rotor current to the target commands of maximum power tracking and copper loss minimisation with stator flux orientation. The robustness to parameter variations can be accomplished by the proposed SMR when the wind turbine is subject to changing wind speed. Simulation results of the DFIG system on a 2.5 MW generator are provided and compared with a fixed-gain proportional-integral (PI) regulator. It is observed from the simulation results that the dynamic responses achieved by the proposed SMR are more robust than those by the fixed-gain PI regulator. The chattering effect caused by the switching function of the SMR can be reduced by an integral type SMR.
机译:通过控制转子电流,可以实现双馈感应发电机(DFIG)的最大功率跟踪和铜损最小化。在这项研究中,提出了一种滑模调节器(SMR)来调节DFIG的转子电流。 SMR的目的是根据定子磁通方向将转子电流调节到最大功率跟踪和铜损最小化的目标命令。当风力涡轮机经受风速变化时,可以通过提出的SMR实现对参数变化的鲁棒性。提供了在2.5 MW发电机上DFIG系统的仿真结果,并将其与固定增益比例积分(PI)调节器进行了比较。从仿真结果可以看出,所提出的SMR所实现的动态响应比固定增益PI调节器所具有的动态响应更鲁棒。可以通过一体型SMR减少由SMR的开关功能引起的颤动效果。

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